return ret;
}
+static int kvm_loongarch_put_lbt(CPUState *cs)
+{
+ CPULoongArchState *env = cpu_env(cs);
+ uint64_t val;
+ int ret;
+
+ /* check whether vm support LBT firstly */
+ if (FIELD_EX32(env->cpucfg[2], CPUCFG2, LBT_ALL) != 7) {
+ return 0;
+ }
+
+ /* set six LBT registers including scr0-scr3, eflags, ftop */
+ ret = kvm_set_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR0, &env->lbt.scr0);
+ ret |= kvm_set_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR1, &env->lbt.scr1);
+ ret |= kvm_set_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR2, &env->lbt.scr2);
+ ret |= kvm_set_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR3, &env->lbt.scr3);
+ /*
+ * Be cautious, KVM_REG_LOONGARCH_LBT_FTOP is defined as 64-bit however
+ * lbt.ftop is 32-bit; the same with KVM_REG_LOONGARCH_LBT_EFLAGS register
+ */
+ val = env->lbt.eflags;
+ ret |= kvm_set_one_reg(cs, KVM_REG_LOONGARCH_LBT_EFLAGS, &val);
+ val = env->lbt.ftop;
+ ret |= kvm_set_one_reg(cs, KVM_REG_LOONGARCH_LBT_FTOP, &val);
+
+ return ret;
+}
+
+static int kvm_loongarch_get_lbt(CPUState *cs)
+{
+ CPULoongArchState *env = cpu_env(cs);
+ uint64_t val;
+ int ret;
+
+ /* check whether vm support LBT firstly */
+ if (FIELD_EX32(env->cpucfg[2], CPUCFG2, LBT_ALL) != 7) {
+ return 0;
+ }
+
+ /* get six LBT registers including scr0-scr3, eflags, ftop */
+ ret = kvm_get_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR0, &env->lbt.scr0);
+ ret |= kvm_get_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR1, &env->lbt.scr1);
+ ret |= kvm_get_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR2, &env->lbt.scr2);
+ ret |= kvm_get_one_reg(cs, KVM_REG_LOONGARCH_LBT_SCR3, &env->lbt.scr3);
+ ret |= kvm_get_one_reg(cs, KVM_REG_LOONGARCH_LBT_EFLAGS, &val);
+ env->lbt.eflags = (uint32_t)val;
+ ret |= kvm_get_one_reg(cs, KVM_REG_LOONGARCH_LBT_FTOP, &val);
+ env->lbt.ftop = (uint32_t)val;
+
+ return ret;
+}
+
void kvm_arch_reset_vcpu(CPUState *cs)
{
CPULoongArchState *env = cpu_env(cs);
return ret;
}
+ ret = kvm_loongarch_get_lbt(cs);
+ if (ret) {
+ return ret;
+ }
+
ret = kvm_loongarch_get_mpstate(cs);
return ret;
}
return ret;
}
+ ret = kvm_loongarch_put_lbt(cs);
+ if (ret) {
+ return ret;
+ }
+
ret = kvm_loongarch_put_mpstate(cs);
return ret;
}
},
};
+static bool lbt_needed(void *opaque)
+{
+ LoongArchCPU *cpu = opaque;
+
+ return !!FIELD_EX64(cpu->env.cpucfg[2], CPUCFG2, LBT_ALL);
+}
+
+static const VMStateDescription vmstate_lbt = {
+ .name = "cpu/lbt",
+ .version_id = 0,
+ .minimum_version_id = 0,
+ .needed = lbt_needed,
+ .fields = (const VMStateField[]) {
+ VMSTATE_UINT64(env.lbt.scr0, LoongArchCPU),
+ VMSTATE_UINT64(env.lbt.scr1, LoongArchCPU),
+ VMSTATE_UINT64(env.lbt.scr2, LoongArchCPU),
+ VMSTATE_UINT64(env.lbt.scr3, LoongArchCPU),
+ VMSTATE_UINT32(env.lbt.eflags, LoongArchCPU),
+ VMSTATE_UINT32(env.lbt.ftop, LoongArchCPU),
+ VMSTATE_END_OF_LIST()
+ },
+};
+
#if defined(CONFIG_TCG) && !defined(CONFIG_USER_ONLY)
static bool tlb_needed(void *opaque)
{
#if defined(CONFIG_TCG) && !defined(CONFIG_USER_ONLY)
&vmstate_tlb,
#endif
+ &vmstate_lbt,
NULL
}
};